Beyond 1 ms Charge-Carrier Recombination Dynamics in the CsPbBr3 Perovskite

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Bojtor, A., Krisztián, D., Korsós, F., Kollarics, S., Pinel, T., Kollár, M., Horváth, E., Mettan, X., Márkus, B. G., Forró, L., Simon, F.
Natura: Preprint
Pubblicazione: 2023
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866910516860944384
author Bojtor, A.
Krisztián, D.
Korsós, F.
Kollarics, S.
Pinel, T.
Kollár, M.
Horváth, E.
Mettan, X.
Márkus, B. G.
Forró, L.
Simon, F.
author_facet Bojtor, A.
Krisztián, D.
Korsós, F.
Kollarics, S.
Pinel, T.
Kollár, M.
Horváth, E.
Mettan, X.
Márkus, B. G.
Forró, L.
Simon, F.
contents Knowledge of the charge-carrier recombination lifetime, tau, is crucial for the various applications of photovoltaic perovskites. We studied the novel inorganic perovskite, CsPbBr3 and we observe recombination dynamics beyond 1 ms below 200 K and tau approaching 100 us at room temperature. Time-resolved microwave-detected photoconductivity decay (TRMCD), used in combination with injection dependence, evidence that tau is dominated by impurity charge trapping. The observed injection dependence is well corroborated by modeling of the trap mechanism. The ultra-long decay time is also consistent with photoconductivity measurements with a continuous-wave excitation at powers corresponding to around one Sun irradiation. While in principle charge-carrier trapping may limit the photovoltaic efficiency in single-cell photovoltaic devices, it could also lead to enhanced efficiency in tandem cells as well as for alternative applications including photodetection and quantum information storage.
format Preprint
id arxiv_https___arxiv_org_abs_2306_14305
institution arXiv
publishDate 2023
record_format arxiv
spellingShingle Beyond 1 ms Charge-Carrier Recombination Dynamics in the CsPbBr3 Perovskite
Bojtor, A.
Krisztián, D.
Korsós, F.
Kollarics, S.
Pinel, T.
Kollár, M.
Horváth, E.
Mettan, X.
Márkus, B. G.
Forró, L.
Simon, F.
Applied Physics
Materials Science
Knowledge of the charge-carrier recombination lifetime, tau, is crucial for the various applications of photovoltaic perovskites. We studied the novel inorganic perovskite, CsPbBr3 and we observe recombination dynamics beyond 1 ms below 200 K and tau approaching 100 us at room temperature. Time-resolved microwave-detected photoconductivity decay (TRMCD), used in combination with injection dependence, evidence that tau is dominated by impurity charge trapping. The observed injection dependence is well corroborated by modeling of the trap mechanism. The ultra-long decay time is also consistent with photoconductivity measurements with a continuous-wave excitation at powers corresponding to around one Sun irradiation. While in principle charge-carrier trapping may limit the photovoltaic efficiency in single-cell photovoltaic devices, it could also lead to enhanced efficiency in tandem cells as well as for alternative applications including photodetection and quantum information storage.
title Beyond 1 ms Charge-Carrier Recombination Dynamics in the CsPbBr3 Perovskite
topic Applied Physics
Materials Science
url https://arxiv.org/abs/2306.14305